This is the final version of the article. Available from the publisher via the DOI in this record.Bacteria sense and respond to their environment through signaling cascades generally referred to as two-component signaling networks. These networks comprise histidine kinases and their cognate response regulators. Histidine kinases have a number of biochemical activities: ATP binding, autophosphorylation, the ability to act as a phosphodonor for their response regulators, and in many cases the ability to catalyze the hydrolytic dephosphorylation of their response regulator. Here, we explore the functional role of "split kinases" where the ATP binding and phosphotransfer activities of a conventional histidine kinase are split onto two distinct ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Bacteria sense and respond to their environment through signaling cascades generally referred to as ...
<div><p>Bacteria sense and respond to their environment through signaling cascades generally referre...
Two-component signal transduction systems (TCSs) are widely conserved in bacteria to respond to and ...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tSynthetic biology aims to design de n...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Synthetic biology aims to design de novo biological systems and reengineer existing ones. These effo...
Two-component systems (TCS) are protein machineries that enable cells to respond to input signals. H...
SummaryTwo-component signal transduction systems are the predominant means by which bacteria sense a...
SummaryIn a commonly accepted model, in response to stimuli, bacterial histidine kinases undergo a c...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...
Bacteria sense and respond to their environment through signaling cascades generally referred to as ...
<div><p>Bacteria sense and respond to their environment through signaling cascades generally referre...
Two-component signal transduction systems (TCSs) are widely conserved in bacteria to respond to and ...
Published onlineJournal ArticleResearch Support, Non-U.S. Gov'tSynthetic biology aims to design de n...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Synthetic biology aims to design de novo biological systems and reengineer existing ones. These effo...
Two-component systems (TCS) are protein machineries that enable cells to respond to input signals. H...
SummaryTwo-component signal transduction systems are the predominant means by which bacteria sense a...
SummaryIn a commonly accepted model, in response to stimuli, bacterial histidine kinases undergo a c...
Two-component signal transduction systems enable bacteria to sense and respond to a wide range of en...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Bacteria transduce signals across the membrane using two-component systems, consisting of a membrane...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
Understanding how multiple signals are integrated in living cells to produce a balanced response is ...
International audienceTwo-component systems reprogramme diverse aspects of microbial physiology in r...